Department of Chemical and Biomolecular Engineering, Hong Kong University of Science and Technology , Clear Water Bay, Kowloon, Hong Kong, People's Republic of China.
Center for Functional Nanomaterials, Brookhaven National Laboratory , Upton, New York 11973, United States.
Nano Lett. 2017 Jun 14;17(6):3926-3931. doi: 10.1021/acs.nanolett.7b01510. Epub 2017 May 16.
Octahedral Pt alloy nanocrystals (NCs) have shown excellent activities as electrocatalysts toward oxygen reduction reaction (ORR). As the activity and stability of NCs are highly dependent on their structure and the elemental distribution, it is of great importance to understand the formation mechanism of octahedral NCs and to rationally synthesize shape-controlled alloy catalysts with optimized ORR activity and stability. However, the factors controlling the structural and compositional evolution during the synthesis have not been well understood yet. Here, we systematically investigated the structure and composition evolution pathways of Pt-Ni octahedra synthesized with the assistance of W(CO) and revealed a unique core-shell structure consisting of a Pt core and a Pt-Ni alloy shell. Below 140 °C, sphere-like pure Pt NCs with the diameter of 3-4 nm first nucleated, followed by the isotropic growth of Pt-Ni alloy on the seeds at temperatures between 170 and 230 °C forming Pt@Pt-Ni core-shell octahedra with {111} facets. Owing to its unique structure, the Pt@Pt-Ni octahedra show an unparalleled stability during potential cycling, that is, no activity drop after 10 000 cycles between 0.6 and 1.0 V. This work proposes the Pt@Pt-Ni octahedra as a high profile electrocatalyst for ORR and reveals the structural and composition evolution pathways of Pt-based bimetallic NCs.
八面体 Pt 合金纳米晶体 (NCs) 作为氧还原反应 (ORR) 的电催化剂表现出优异的活性。由于 NCs 的活性和稳定性高度依赖于其结构和元素分布,因此了解八面体 NCs 的形成机制并合理合成具有优化 ORR 活性和稳定性的形状控制合金催化剂非常重要。然而,控制合成过程中结构和组成演变的因素尚未得到很好的理解。在这里,我们系统地研究了在 W(CO) 的协助下合成的 Pt-Ni 八面体的结构和组成演变途径,并揭示了一种独特的核壳结构,由 Pt 核和 Pt-Ni 合金壳组成。在 140°C 以下,首先形成直径为 3-4nm 的球形纯 Pt NCs,然后在 170-230°C 之间的温度下在种子上进行各向同性的 Pt-Ni 合金生长,形成具有 {111} 面的 Pt@Pt-Ni 核壳八面体。由于其独特的结构,Pt@Pt-Ni 八面体在电势循环过程中表现出无与伦比的稳定性,即在 0.6-1.0V 之间的 10000 次循环后没有活性下降。这项工作提出了 Pt@Pt-Ni 八面体作为 ORR 的高活性电催化剂,并揭示了 Pt 基双金属 NCs 的结构和组成演变途径。